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COMPUTATIONAL SIMULATIONS OF OCULAR BLAST LOADING AND PREDICTION OF EYE INJURY RISK

机译:眼睑爆破载荷的计算模拟及眼损伤预测

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Ocular injury from blast loading is associated with severe ocular morbidity and visual impairment [1]. Improvised explosive devices are a common cause of ocular injury and were responsible for 51 % of ocular war injuries in a study by Mader et al [2]. Finite element models such as the validated Virginia Tech - Wake Forest University (VT-WFU) Eye Model can be used to simulate blast loading to the eye [3]. This model is based on two spherical geometries forming chambers anterior and posterior to the lens, and includes Lagrangian and Eulerian meshes to accurately represent the mechanics of both solid and fluid interactions. The model has been updated from a quarter cylinder geometry to represent the entire eye and therefore does not require symmetry planes and will handle impact directions other than centered anterior-posterior impacts with radially symmetric objects [4]. The objective of the study was to use this model to simulate different blast scenarios and predict eye injury risk.
机译:爆炸载荷的眼部损伤与严重的眼部发病率和视觉损伤有关[1]。简易爆炸装置是眼部损伤的常见原因,并负责Mader等[2]的研究中的51%的眼部受伤。有限元模型,如验证的弗吉尼亚技术 - 苏醒森林大学(VT-WFU)眼模型可用于模拟眼睛的爆破加载[3]。该模型基于两个球形几何形状形成腔室前后和镜片后部,包括拉格朗日和欧拉网格,以准确地代表固体和流体相互作用的机制。该模型已从四分之一圆柱几何更新,以表示整个眼睛,因此不需要对称平面,并且将以径向对称对象的径向对称对象的中心前后冲击以外的冲击方向[4]。该研究的目的是使用该模型来模拟不同的爆炸情景并预测眼睛伤害风险。

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